IP Library › Granted Patent US 12,416,932
Granted Patent B2
US 12,416,932 · App. 18/584,510 · Granted Sep 16, 2025

Pressure regulators with adjustable boost bodies

Inventors: Jeffrey Campbell Masteller (McKinney, TX); Keltan Travis Forrest (Richardson, TX); Justin Lane Masias (McKinney, TX); Andrew Da Costa (Plano, TX); Ruben Longoria (Little Elm, TX); Alexander John Ferguson (Denton, TX)
Assignee: Emerson Process Management Regulator Technologies, Inc.
G05D16/024F16K31/365
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Quick Facts
Patent No.
US 12,416,932
App. No.
18/584,510
Granted
Sep 16, 2025
Kind
B2
Abstract

Pressure regulators with adjustable boost bodies are described herein. An example pressure regulator includes a valve body; a seat in the fluid passageway; an actuator casing coupled to the valve body; and a plug assembly including: a stem; a plug coupled to the stem; a stem guide disposed in the channel of the actuator casing; a boost body on the second side of the stem guide; and a tube extending through the boost body, the tube and the boost body forming a unitary structure to prevent movement of the tube relative to the boost body, the tube having a first end and a second end, the second end disposed in a downstream location relative to the seat, wherein the boost body is rotatable with respect to the stem guide to position the tube in at least one other orientation relative to the actuator casing.

Claims (54)

1. A pressure regulator comprising:

a valve body defining a fluid passageway between an inlet and an outlet;

a seat in the fluid passageway;

an actuator casing coupled to the valve body, the actuator casing defining a pressure sense chamber and a channel between the pressure sense chamber and the fluid passageway in the valve body; and

a plug assembly including:

a stem;

a plug coupled to the stem;

a stem guide disposed in the channel of the actuator casing, the stem moveable in the stem guide to move the plug relative to the seat, the stem guide having a first side facing the pressure sense chamber and a second side facing the fluid passageway;

a boost body on the second side of the stem guide; and

a tube extending through the boost body, the tube and the boost body forming a unitary structure to prevent movement of the tube relative to the boost body, the tube having a first end and a second end, the second end disposed in a downstream location relative to the seat such that the pressure sense chamber is in fluid communication with the downstream location, wherein a portion of the tube between the boost body and the second end is curved and supported by a first arm and a second arm of the boost body, and wherein the boost body is rotatable with respect to the stem guide to position the tube in at least one other orientation relative to the actuator casing.

2. The pressure regulator claim 1 , wherein the first arm and the second arm of the boost body are unitary with the boost body and the tube.

3. The pressure regulator of claim 1 , wherein the portion is a first portion, and wherein a second portion of the tube is straight.

4. A pressure regulator comprising:

a valve body defining a fluid passageway between an inlet and an outlet;

a seat in the fluid passageway;

an actuator casing coupled to the valve body, the actuator casing defining a pressure sense chamber and a channel between the pressure sense chamber and the fluid passageway in the valve body; and

a plug assembly including:

a stem;

a plug coupled to the stem;

a stem guide disposed in the channel of the actuator casing, the stem moveable in the stem guide to move the plug relative to the seat, the stem guide having a first side facing the pressure sense chamber and a second side facing the fluid passageway;

a boost body on the second side of the stem guide; and

a tube extending through the boost body, the tube and the boost body forming a first unitary structure to prevent movement of the tube relative to the boost body, the tube having a first end and a second end, the second end disposed in a downstream location relative to the seat such that the pressure sense chamber is in fluid communication with the downstream location, wherein a portion of the tube between the boost body and the second end is curved, wherein the portion of the tube is curved to form a first portion and a second portion, the first portion nearest to the boost body and the second portion nearest to the second end of the tube, and a web connects the first portion and the second portion, the web, the first portion, and the second portion forming a second unitary structure, and wherein the boost body is rotatable with respect to the stem guide to position the tube in at least one other orientation relative to the actuator casing.

5. The pressure regulator of claim 4 , wherein the portion of the tube is curved to form the first portion, the second portion, and a third portion, wherein the first portion is at a first orientation, the second portion is at a second orientation different than the first orientation, and the third portion is at a third orientation different than the first and second orientations.

6. A pressure regulator comprising:

a valve body defining a fluid passageway between an inlet and an outlet;

a seat in the fluid passageway;

an actuator casing coupled to the valve body, the actuator casing defining a pressure sense chamber and a channel between the pressure sense chamber and the fluid passageway in the valve body; and

a plug assembly including:

a stem;

a plug coupled to the stem;

a stem guide disposed in the channel of the actuator casing, the stem moveable in the stem guide to move the plug relative to the seat, the stem guide having a first side facing the pressure sense chamber and a second side facing the fluid passageway;

a boost body on the second side of the stem guide; and

a tube extending through the boost body, the tube and the boost body forming a unitary structure to prevent movement of the tube relative to the boost body, the tube having a first end and a second end, the second end disposed in a downstream location relative to the seat such that the pressure sense chamber is in fluid communication with the downstream location, wherein the tube includes a first tube and a second tube that extend from different positions on the boost body and converge to form a third tube, and wherein the boost body is rotatable with respect to the stem guide to position the tube in at least one other orientation relative to the actuator casing.

7. The pressure regulator of claim 6 , wherein the first tube and the second tube are supported by a first arm and a second arm, respectively, the first tube, the first arm, and the boost body forming a first unitary structure and the second tube, the second arm, and the boost body forming a second unitary structure.

8. A pressure regulator comprising:

a valve body defining a fluid passageway between an inlet and an outlet;

a seat in the fluid passageway;

an actuator casing coupled to the valve body, the actuator casing defining a pressure sense chamber and a channel between the pressure sense chamber and the fluid passageway in the valve body; and

a plug assembly including:

a stem;

a plug coupled to the stem;

a stem guide disposed in the channel of the actuator casing, the stem moveable in the stem guide to move the plug relative to the seat, the stem guide having a first side facing the pressure sense chamber and a second side facing the fluid passageway; and

a key to orient a boost body with a tube from a first predetermined orientation to a second predetermined orientation relative to the valve body, wherein the key includes at least one projection that corresponds to a notch in the boost body.

9. The pressure regulator of claim 8 , wherein a first end of the tube is disposed in the boost body.

10. The pressure regulator of claim 9 , wherein the boost body includes at least one notch to align with the tube.

11. The pressure regulator of claim 8 , wherein the tube is curved to include a 90° turn.

12. A plug assembly for a pressure regulator, the plug assembly comprising:

a boost body on a side of a stem guide; and

a tube extending through the boost body, the tube and the boost body forming a unitary structure to prevent movement of the tube relative to the boost body, the tube having a first end and a second end, the second end to be disposed in a downstream location relative to a seat in a fluid passageway such that a pressure sense chamber is in fluid communication with the downstream location, wherein the boost body is moveable away from the side of the stem guide and rotatable relative to the stem guide to position the tube.

13. The plug assembly of claim 12 , wherein a portion of the tube between the boost body and the second end is curved.

14. The plug assembly of claim 12 , wherein a portion of the tube between the boost body and the second end is straight.

15. The plug assembly of claim 12 , wherein the first end of the tube is disposed in the boost body.

16. The plug assembly of claim 15 , wherein the boost body includes at least one notch to align with the tube.

17. The plug assembly of claim 12 , wherein the boost body is rotated relative to a key including at least one projection that corresponds to a notch in the boost body.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 13, 2024
From: MASTELLER, JEFFREY CAMPBELL; FORREST, KELTAN TRAVIS; MASIAS, JUSTIN LANE; DA COSTA, ANDREW; LONGORIA, RUBEN; FERGUSON, ALEXANDER JOHN
To: EMERSON PROCESS MANAGEMENT REGULATOR TECHNOLOGIES, INC.
Reel/Frame 066754/0367 →
Continuity (3)
Continuation In Part 18475985 · Sep 27, 2023
Provisional Application 63498970 · Apr 28, 2023
Related Publication 20240361787A1 · Oct 31, 2024
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